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Application Notes from Texas Instruments

TMS320VC5402 and TMS320UC5402 Bootloader (Rev. B)

Texas Instruments
This document describes the features and operation of the TMS320UC5402 andTMS320VC5402 bootloader. The contents of the on-chip ROM are also discussed.

Important Notice Regarding Bootloader Program Contents:

Texas Instruments may periodically update the bootloader code supplied in the ROM to correct known problems provide additional features or improve functionality. These changes ma

Adding An Additional TS Qualification Range Before Start of Charge-bq24060/2/4/5

Texas Instruments
Adding An Additional TS Qualification Range Before Start of Charge-bq24060/2/4/5

AN-597 Current Feedback Amplifiers

Texas Instruments
AN-597 Current Feedback Amplifiers

Current Doubler Rectifier Offers Ripple Current Cancellation

Texas Instruments
Current Doubler Rectifier Offers Ripple Current Cancellation

RF Matching Optimization Improves TRF3705 Performance

Texas Instruments
RF Matching Optimization Improves TRF3705 Performance

DN-59A UCC3889 Bias Supply Controller EVM Kit - Schematic

Texas Instruments
This design note presents a schematic and a photograph of the top-side layout for the UCC3889 Off-Line Bias Supply Controller IC Evaluation Kit. This board accepts both conventional through-hole or leaded components as well as their surface-mount counterparts. An additional prototyping area allows engineers to further customize these units to address their projects' specific needs. Component lis

Advanced Gas Gauge Host Firmware for TI Battery Monitor ICs

Texas Instruments
TI advanced battery monitoring ICs such as the bq2018 bq2019 and bq2023 are designed to accurately measure the charge and discharge currents in rechargeable battery packs. Intended for pack integration these devices contain all the necessary functions to form the basis of a comprehensive battery capacity management system in applications such as cellular phones PDA's internet appliances or

SN65LVCP114 Guidelines for Skew Compensation

Texas Instruments
Channel to channel skew in high speed data paths must be controlled to ensure robust system performance. Skew can arise from the integrated circuit package or the circuit board. This application note provides information on channel to channel skew compensation of the SN65LVCP114.

Diamond Transistor OPA660

Texas Instruments
The monolithic integrated circuit OPA660 uses the Diamond structure to act as an ideal transistor. However this circuit has the advantage that it avoids the biasing circuits and eliminates the need for an offset voltage compensation network. With this element peripheral components are reduced to the essential minimum. Using the DC-coupled wideband voltage amplifier and buffer conventional and n

Using the TMS320C5515/14/05/04 Bootloader (Rev. C)

Texas Instruments
Using the TMS320C5515/14/05/04 Bootloader

TMS320C6747/45/43 & OMAP-L1x7 USB Upstream Device Compliance Testing

Texas Instruments
TMS320C6747/45/43 & OMAP-L1x7 Universal Serial Bus Upstream Device Compliance Testing

Use of the CMOS Unbuffered Inverter in Oscillator Circuits

Texas Instruments
CMOS devices have a high input impedance high gain and high bandwidth. These characteristics are similar to ideal amplifier characteristics and hence a CMOS buffer or inverter can be used in an oscillator circuit in conjunction with other passive components. Now CMOS oscillator circuits are widely used in high-speed applications because they are economical easy to use and take significantly

Advantage of Using TI's Lowest Jitter Differential Clock Buffer

Texas Instruments
Advantage of Using TI's Lowest Jitter Differential Clock Buffer at SONET Speed 622.08 MHz

Performance of MuxIt(TM) with Different Cable Lengths

Texas Instruments
Designers are often faced with the task of moving parallel data from one location to another over moderate distances and in the most efficient manner. Over the last few years a broad spectrum of low-voltage differential signaling (LVDS) serializers have become available in various clock-rate/data-width configurations. This report illustrates the performance of Texas Instruments MuxIt(TM) serial

Frequency Margining Using TI High-Performance Clock Generators

Texas Instruments

Crystal oscillators and/or multiple output clock generators are critical in today’s high performance consumer, computing and communications systems. Deciding an optimal clock rate for the system can sometimes require several rounds of prototyping and validation. Clock Generator and Oscillator ICs with the right hooks to margin the synthesized clock can help to streamline the overall product development cycle and optimize performance of the end system. LMK03328 and LMK03318 are TI’s high performance programmable clock generators with 100fs (typical) integrated RMS jitter (12 kHz – 20 MHz) that also support multiple frequency margining modes. This application note will describe the benefits of frequency margining in various applications, highlight common approaches in the industry for frequency margining and describe the flexible frequency margining features on LMK03328 and LMK03318 that are preferred by system architects.

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